A rationale for using local and regional point rainfall data for design and analysis of urban storm drainage systems

被引:25
作者
Mikkelsen, PS
Madsen, H
Arnbjerg-Nielsen, K
Jorgensen, HK
Rosbjerg, D
Harremoes, P
机构
[1] Tech Univ Denmark, Dept Environm Sci & Engn, DK-2800 Lyngby, Denmark
[2] Tech Univ Denmark, Dept Hydrodynam & Water Resources, DK-2800 Lyngby, Denmark
[3] Danish Meteorol Inst, Weather & Climate Informat Div, DK-2100 Copenhagen E, Denmark
关键词
urban drainage; rainfall; local data; regional data; time series; idf-curves;
D O I
10.2166/wst.1998.0423
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The Danish measuring network for high-resolution rainfall data consists of approximately 70 tipping bucket rain gauges of which 41 have been operated for more than 10 years. The gauges are separated by one to 300 km and cover an area of 43,000 km2. Significant geographical variations of extreme rainfall characteristics have been observed. Part of these variations can be explained by correlation with the mean annual rainfall and the existence of a metropolitan effect in the Greater Copenhagen area. The remaining variation may be attributed to sampling errors and small-scale spatial variations close to the gauges. Engineering methodologies all require rain data of some kind, ranging from design storms based on idf-curves for use in simple calculations to high-resolution time series for use in detailed simulation studies. A comprehensive regional analysis was carried out to account for the geographical variation and to improve estimation for large return periods exceeding the actual length of the measured time series. Ideally, rainfall data used as input to urban drainage calculations should always be based on regional rain information. Regional design storms can be made readily available based on theory developed in this study. However, a satisfactory framework for generating synthetic rain series from regional rain information is not yet available. Thus, there will still be a need for using historical rain series in the near future. To improve the basis for choosing representative historical rain series all the Danish gauges have been classified according to their deviations from the regional distribution. (C) 1998 IAWQ. Published by Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:7 / 14
页数:8
相关论文
共 11 条
[1]  
ARNBJERGNIELSEN K, 1994, NORD HYDROL, V25, P267
[2]   The importance of inherent uncertainties in state-of-the-art urban storm drainage modelling for ungauged small catchments [J].
ArnbjergNielsen, K ;
Harremoes, P .
JOURNAL OF HYDROLOGY, 1996, 179 (1-4) :305-319
[3]   Interpretation of regional variation of extreme values of point precipitation in Denmark [J].
ArnbjergNielsen, K ;
Harremoes, P ;
Spliid, H .
ATMOSPHERIC RESEARCH, 1996, 42 (1-4) :99-111
[4]  
Chow T.V., 1988, APPL HYDROLOGY
[5]   PROPERTIES OF EXTREME POINT RAINFALL .1. RESULTS FROM A RAIN-GAUGE SYSTEM IN DENMARK [J].
HARREMOES, P ;
MIKKELSEN, PS .
ATMOSPHERIC RESEARCH, 1995, 37 (04) :277-286
[6]  
JOHANSEN L, 1979, INT S URB STORM RUN, P61
[7]   METHODS FOR CALCULATION OF ANNUAL AND EXTREME OVERFLOW EVENTS FROM COMBINED SEWER SYSTEMS [J].
JOHANSEN, NB ;
HARREMOES, P ;
JENSEN, M .
WATER SCIENCE AND TECHNOLOGY, 1984, 16 (8-9) :311-325
[8]  
MADSEN H, 1994, NORD HYDROL, V25, P279
[9]   Generalized least squares and empirical Bayes estimation in regional partial duration series index-flood modeling [J].
Madsen, H ;
Rosbjerg, D .
WATER RESOURCES RESEARCH, 1997, 33 (04) :771-781
[10]   Properties of extreme point rainfall .3. Identification of spatial inter-site correlation structure [J].
Mikkelsen, PS ;
Madsen, H ;
Rosbjerg, D ;
Harremoes, P .
ATMOSPHERIC RESEARCH, 1996, 40 (01) :77-98